WO2018145271A1 - 一种智能照明灯具 - Google Patents

一种智能照明灯具 Download PDF

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Publication number
WO2018145271A1
WO2018145271A1 PCT/CN2017/073123 CN2017073123W WO2018145271A1 WO 2018145271 A1 WO2018145271 A1 WO 2018145271A1 CN 2017073123 W CN2017073123 W CN 2017073123W WO 2018145271 A1 WO2018145271 A1 WO 2018145271A1
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Prior art keywords
illumination
microprocessor
lighting fixture
intelligent lighting
source assembly
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PCT/CN2017/073123
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English (en)
French (fr)
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陈崇震
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格兰比圣(深圳)科技有限公司
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Priority to PCT/CN2017/073123 priority Critical patent/WO2018145271A1/zh
Publication of WO2018145271A1 publication Critical patent/WO2018145271A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S2/00Systems of lighting devices, not provided for in main groups F21S4/00 - F21S10/00 or F21S19/00, e.g. of modular construction
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices

Definitions

  • the present invention relates to the field of lighting technology, and more particularly to an intelligent lighting fixture.
  • lighting fixtures have a single function and a low degree of intelligence.
  • the invention provides an intelligent prompt light fixture for the defects of the existing lighting fixture with single function and low intelligence.
  • the technical solution adopted by the present invention to solve the technical problem thereof is to provide an intelligent lighting fixture, comprising:
  • Illumination light source assembly
  • a microprocessor coupled to the illumination source assembly for controlling illumination of the light source assembly
  • a central controller respectively connected to the microprocessor and the camera device, for receiving a first illumination command sent by the control device and forwarding the microprocessor, and controlling the camera device to collect image information of the surrounding environment, Identifying an object in the image information, generating a second illumination command when the state of the identified object meets a preset condition, and transmitting the image to the microprocessor to pass the
  • the microprocessor controls the light source assembly to provide illumination in accordance with an illumination mode comprised by the second illumination command.
  • the central controller comprises:
  • a wireless communication unit for wirelessly communicating with the control device and/or the cloud server
  • An image recognition unit is connected to the image capturing device and configured to identify an object in the image information of the surrounding environment collected by the camera device;
  • control unit respectively coupled to the wireless communication unit, the image recognition unit, the microprocessor, and the camera device, for forwarding the received first illumination command to the microprocessor, and controlling the
  • the image capturing device collects image information of the surrounding environment, and controls the image recognition unit to identify the target object in the image information, and generates a second lighting instruction and sends when the recognized state of the target meets the preset condition And to the microprocessor to control illumination of the illumination source assembly by the microprocessor to provide illumination in accordance with an illumination mode comprised by the second illumination instruction.
  • the central controller further comprises:
  • a prompting unit connected to the control unit
  • the control unit is further configured to: when the state of the identified target meets a preset condition, control the prompting unit to generate prompt information, and send the prompt information to the predetermined destination terminal by using the wireless communication unit. device.
  • the illumination mode comprises gradually illuminating the illumination source assembly.
  • the intelligent lighting fixture of the present invention further comprises:
  • An audio playback device coupled to the central controller
  • the central controller is further configured to control the audio playback device to play predetermined audio information when the recognized state of the target meets a preset condition.
  • the target includes a character; the preset condition includes the character waking up from a sleeping state Come.
  • the wireless communication unit comprises a WIFI module and an infrared receiving module.
  • the wireless communication unit further includes a zigbee module for wirelessly communicating with other intelligent lighting fixtures.
  • the light source assembly includes a main light and an ambient light respectively connected to the microprocessor.
  • the function of the general illumination is provided, and by recognizing the image information of the collected surrounding environment, the light source component is controlled according to a specific illumination mode when the state of the recognized target meets the preset condition. Illumination is provided, and the illumination mode changes as the state of the object changes, and the degree of intelligence is high.
  • FIG. 1 is a schematic structural view of a first embodiment of an intelligent lighting fixture of the present invention
  • FIG. 2 is a schematic structural view of a central controller in a first embodiment of the intelligent lighting fixture of the present invention
  • FIG. 3 is a schematic structural view of a central controller in a second embodiment of the intelligent lighting fixture of the present invention.
  • FIG. 4 is a schematic structural view of a third embodiment of the intelligent lighting fixture of the present invention.
  • the smart lighting fixture 100 includes an illumination source assembly 110 , a microprocessor 120 , an imaging device 130 , and Central controller 140.
  • the illumination source assembly 110 is coupled to a microprocessor (MCU) 120 that is coupled to the microprocessor 120 and camera unit 130, respectively.
  • MCU microprocessor
  • the illumination light source component 110 is configured to receive the PWM control signal output by the microprocessor 120. Provide lighting scenarios.
  • the illumination source assembly 110 can include a main light as well as an ambient light (not shown).
  • the main lamp can be driven by two PWM control signals to provide illumination sources of both white and warm white.
  • the ambient light is driven by three PWM control signals or a single-wire communication drive unit that provides a multi-color illumination source.
  • the microprocessor 120 is configured to control the illumination source assembly 110 to provide corresponding illumination upon receipt of the illumination command.
  • the received illumination command indicates that the primary light is illuminated to provide a positive white light source, and the microprocessor 120 outputs a corresponding PWM control signal to the primary light to illuminate the primary light and provide a positive white light source.
  • the camera device 130 may be a camera that acquires image information of the environment surrounding the lamp after being turned on, and the image information includes still image information and moving image information.
  • the central controller 150 is configured to receive the first illumination command sent by the control device and forward the microprocessor 120, and control the image capturing device 130 to collect image information of the surrounding environment, and identify the target object in the image information, when the identified target object
  • the second illumination command is generated when the state meets the preset condition and sent to the microprocessor 120 to control the illumination source component 110 to provide illumination in accordance with the illumination mode included in the second illumination command by the microprocessor 120.
  • the central controller 140 includes a wireless communication unit 141, an image recognition unit 142, and a control unit 143.
  • the control unit 143 is connected to the wireless communication unit 141, the image recognition unit 142, the microprocessor 120, and the imaging device 130, respectively.
  • the wireless communication unit 141 is configured to perform wireless communication with the control device and/or the cloud server, including a WIFI module and an infrared receiving module.
  • the central controller 140 performs information interaction with the first type of control device through the WIFI module, and performs information interaction between the infrared receiving module and the second type of control device.
  • the first type of control device can be a smart phone, and the second type of control device can be an infrared remote control.
  • the wireless communication unit 141 may also include a zigbee module for wirelessly communicating with other intelligent disinfecting luminaires.
  • the receiving distance of the infrared receiving module is 6-10m, receiving the lighting instruction sent by the infrared remote controller and the starting instruction, and the lighting instruction can be used to instruct to turn on or off the illumination light source assembly 110 and dim, adjust brightness and color the illumination light source assembly 110. Temperature signal, etc.
  • the infrared remote controller is provided with various function buttons for controlling the opening and closing of the light source assembly, adjusting the brightness and color of the illumination light source assembly 110 (for example, adjusting the brightness of the main light, adjusting the color of the ambient light), and controlling the distance. It is 10m.
  • the buttons on the infrared remote control include: a switch button of the main lamp, a switch button of the atmosphere lamp, a left and right left and right determination button (menu button), and the ring button is used to adjust the color of the atmosphere lamp or the brightness of the main lamp, and turn on the button of the camera.
  • the user can also use WIFI to interact with the intelligent lighting fixture 100 through the smart phone, and the control function on the smart phone can completely cover the function of the infrared remote controller.
  • the image recognition unit 152 can recognize the image information of the surrounding environment collected by the imaging device 130 using an existing image recognition technology, and output the recognition result to the control unit 153.
  • the control unit 143 is configured to forward the received first illumination instruction to the microprocessor 120, and control the image capturing device 130 to collect image information of the surrounding environment, and control the image recognition unit 142 to identify the target object in the image information, when identifying
  • the second illumination command is generated when the state of the target meets the preset condition and sent to the microprocessor 120 to control the illumination source assembly 110 to provide illumination in accordance with the illumination mode included in the second illumination command by the microprocessor 120.
  • the illumination mode included in the second illumination command includes gradually illuminating the illumination source assembly 110.
  • the target may be an infant or a child in the room, and the preset condition may be to wake up from sleep. As such, when the baby or child in the room that is originally in a sleep state wakes up, the illumination light source assembly 110 will be gradually illuminated, so that the baby or child can better adapt to changes in ambient light intensity.
  • the intelligent lighting fixture 100 includes an illumination source assembly 110, a microprocessor 120, an imaging device 130, and Central controller 140.
  • the illumination source assembly 110 is coupled to a microprocessor (MCU) 120 that is coupled to the microprocessor 120 and camera unit 130, respectively.
  • MCU microprocessor
  • the central controller 140 includes a wireless communication unit 141, an image recognition unit 142, and a control unit 143.
  • the control unit 143 is connected to the wireless communication unit 141, the image recognition unit 142, the microprocessor 120, and the imaging device 130, respectively.
  • the central controller 140 further includes a prompting unit 144 connected to the control unit 143, and the prompting unit 144 is used in the control unit 143. Generate prompt information under control.
  • the control unit 143 is further configured to: when the state of the recognized target meets the preset condition, the control prompting unit 144 generates the prompt information, and transmits the prompt information to the predetermined destination terminal device through the wireless communication unit 141.
  • the intelligent lighting fixture 100 includes an illumination source assembly 110, a microprocessor 120, an imaging device 130, and a central controller 140.
  • the illumination source assembly 110 is coupled to a microprocessor (MCU) 120 that is coupled to the microprocessor 120 and camera unit 130, respectively.
  • MCU microprocessor
  • the central controller 140 includes a wireless communication unit 141, an image recognition unit 142, and a control unit 143.
  • the control unit 143 is connected to the wireless communication unit 141, the image recognition unit 142, the microprocessor 120, and the imaging device 130, respectively.
  • the intelligent lighting fixture 100 further includes an audio playback device 150 connected to the central controller 140.
  • the central controller 140 is further configured to control the audio playback device 150 to play predetermined audio information when the state of the recognized target satisfies the preset condition.
  • the audio playback device 150 includes a speaker.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

一种智能照明灯具,包括照明光源组件(110)、微处理器(120)、摄像装置(130)和中央控制器(140)。光源组件(110)与微处理器(120)连接,中央控制器(140)分别与微处理器(120)和摄像装置(130)连接,照明灯具具备普通照明功能,并且通过对采集到的周围环境的图像信息的识别,在识别出目标物的状态满足预设条件时,控制光源组件(110)按照特定的照明模式提供照明,照明方式随着目标物状态的变化而变化,智能化程度高。

Description

一种智能照明灯具 技术领域
本发明涉及照明技术领域,更具体地说,涉及一种智能照明灯具。
背景技术
随着科技的发展,越来越多的设备打破原始功能的限制,集成多种功能,为人们的生活带来极大便利。
然而目前,照明用的灯具功能单一,智能化程度低。
发明内容
本发明针对现有的照明灯具功能单一,智能化程度低的缺陷,提供一种智能提示灯具。
本发明解决其技术问题采用的技术方案是:提供一种智能照明灯具,包括:
照明光源组件;
微处理器,与所述照明光源组件连接,用于控制所述光源组件提供照明;
摄像装置;
中央控制器,分别与所述微处理器和所述摄像装置连接,用于接收控制设备发送的第一照明指令并转发所述微处理器,以及控制所述摄像装置采集周围环境的图像信息,对所述图像信息中的目标物进行识别,当识别出的所述目标物的状态满足预设条件时产生第二照明指令并发送到所述微处理器,以通过所 述微处理器控制所述光源组件按照所述第二照明指令包含的照明模式提供照明。
优选地,所述中央控制器包括:
无线通信单元,用于与控制设备和/或云端服务器进行无线通信;
图像识别单元,与所述摄像装置连接,用于对所述摄像装置采集的周围环境的图像信息中的目标物进行识别;
控制单元,分别与所述无线通信单元、所述图像识别单元、所述微处理器和所述摄像装置连接,用于将接收到的第一照明指令转发所述微处理器,以及控制所述摄像装置采集周围环境的图像信息,并控制所述图像识别单元对所述图像信息中的目标物进行识别,当识别出的所述目标物的状态满足预设条件时产生第二照明指令并发送到所述微处理器,以通过所述微处理器控制所述照明光源组件按照所述第二照明指令包含的照明模式提供照明。
优选地,所述中央控制器还包括:
与所述控制单元连接的提示单元;
所述控制单元还用于当识别出的所述目标物的状态满足预设条件时,控制所述提示单元生成提示信息,并将所述提示信息通过所述无线通信单元发送到预定的目的终端设备。
优选地,所述照明模式包括逐渐点亮照明光源组件。
优选地,本发明的智能照明灯具还包括:
与所述中央控制器连接的音频播放装置;
所述中央控制器还用于当识别出的所述目标物的状态满足预设条件时,控制音频播放装置播放预定的音频信息。
优选地,所述目标物包括人物;所述预设条件包括所述人物从睡觉状态醒 来。
优选地,所述无线通信单元包括WIFI模块以及红外接收模块。
优选地,所述无线通信单元还包括zigbee模块,所述zigbee模块用于与其他智能照明灯具进行无线通信。
优选地,所述光源组件包括分别与所述微处理器连接的主灯以及氛围灯。
通过实施本发明的智能照明灯具,具备普通照明的功能,另外通过对采集到的周围环境的图像信息的识别,在识别出的目标物的状态满足预设条件时控制光源组件按照特定的照明模式提供照明,照明方式随着目标物的状态的变化而变化,智能化程度高。
附图说明
图1为本发明的智能照明灯具的第一实施例的结构示意图;
图2为本发明的智能照明灯具的第一实施例中中央控制器的结构示意图;
图3为本发明的智能照明灯具的第二实施例中中央控制器的结构示意图;
图4为本发明的智能照明灯具的第三实施例的结构示意图。
具体实施方式
以下结合附图和实施例对本发明作进一步的解释说明。
图1为本发明的智能照明灯具100的第一实施例的结构示意图,如图1所示,在本实施例中,智能照明灯具100包括照明光源组件110、微处理器120、摄像装置130和中央控制器140。照明光源组件110与微处理器(MCU)120连接,中央控制器140分别与微处理器120和摄像装置130连接。
其中,照明光源组件110用于接收微处理器120输出的PWM控制信号,从 而提供照明情景。照明光源组件110可以包括主灯以及氛围灯(图中未示出)。主灯可以由两路PWM控制信号驱动,分别提供正白以及暖白两种颜色的照明光源。氛围灯由三路PWM控制信号驱动或者是单线通信驱动单元,提供多色的照明光源。
微处理器120用于在接收到照明指令时控制照明光源组件110提供相应的照明。例如,接收到的照明指令指示将主灯点亮提供正白的光源,微处理器120输出相应的PWM控制信号到主灯,从而点亮主灯并提供正白的光源。
摄像装置130可以是摄像头,在被开启后获取灯具周围环境的图像信息,图像信息包括静态图像信息以及动态图像信息。
中央控制器150用于接收控制设备发送的第一照明指令并转发微处理器120,以及控制摄像装置130采集周围环境的图像信息,对图像信息中的目标物进行识别,当识别出的目标物的状态满足预设条件时产生第二照明指令并发送到微处理器120,以通过微处理器120控制照明光源组件110按照第二照明指令包含的照明模式提供照明。
如图2所示,在本实施例中,中央控制器140包括无线通信单元141、图像识别单元142和控制单元143。控制单元143分别与无线通信单元141、图像识别单元142、微处理器120和摄像装置130连接。
其中,无线通信单元141用于与控制设备和/或云端服务器进行无线通信,包括WIFI模块以及红外接收模块。中央控制器140通过WIFI模块与第一类控制设备进行信息交互,通过红外接收模块与第二类控制设备进行信息交互。第一类控制设备可以是智能手机,第二类控制设备可以是红外遥控器。在其他实施例中,无线通信单元141还可以包括zigbee模块,zigbee模块用于与其他智能消毒灯具进行无线通信。
红外接收模块的接收距离为6-10m,接收红外遥控器发送的照明指令以及启动指令,照明指令可用于指示开启或者关闭照明光源组件110以及对照明光源组件110进行调光、调亮度以及调色温信号等。
红外遥控器上设置有各种功能按键,用于实现控制光源组件的开与关、调节照明光源组件110的亮度以及色彩(例如,调整主灯的亮度,调整氛围灯的色彩),控制距离约为10m。红外遥控器上的按键包括:主灯的开关按键、氛围灯的开关按键、上下左右确定按键(菜单键),圆环按键用于调节氛围灯的色彩或者主灯的亮度,开启摄像头的按键。
用户也可以通过智能手机使用WIFI与智能照明灯具100进行信息的交互,智能手机上的控制功能可以完全覆盖红外遥控器的功能。
图像识别单元152可以使用现有的图像识别技术,对摄像装置130采集的周围环境的图像信息进行识别,并将识别结果输出到控制单元153。
控制单元143用于将接收到的第一照明指令转发微处理器120,以及控制摄像装置130采集周围环境的图像信息,并控制图像识别单元142对图像信息中的目标物进行识别,当识别出的目标物的状态满足预设条件时产生第二照明指令并发送到微处理器120,以通过微处理器120控制照明光源组件110按照第二照明指令包含的照明模式提供照明。第二照明指令包含的照明模式包括逐渐点亮照明光源组件110。目标物可以是房间中的婴儿或者儿童,预设条件可以是从睡眠中醒过来。如此,当房间中原本处于睡眠状态的婴儿或者儿童醒过来,照明光源组件110将被逐渐点亮,使得婴儿或者儿童能够更好的适应环境光强的变化。
在本发明的智能照明灯具100的第二实施例中,参见图1,在本实施例中,智能照明灯具100包括照明光源组件110、微处理器120、摄像装置130和中 央控制器140。照明光源组件110与微处理器(MCU)120连接,中央控制器140分别与微处理器120和摄像装置130连接。
参见图2,中央控制器140包括无线通信单元141、图像识别单元142和控制单元143。控制单元143分别与无线通信单元141、图像识别单元142、微处理器120和摄像装置130连接。
本实施例与第一实施例的区别在于,如图3所示,在本实施例中,中央控制器140还包括与控制单元143连接的提示单元144,提示单元144用于在控制单元143的控制下生成提示信息。
控制单元143还用于当识别出的目标物的状态满足预设条件时,控制提示单元144生成提示信息,并将提示信息通过无线通信单元141发送到预定的目的终端设备。
在本发明的智能照明灯具100的第三实施例中,参见图1,在本实施例中,智能照明灯具100包括照明光源组件110、微处理器120、摄像装置130和中央控制器140。照明光源组件110与微处理器(MCU)120连接,中央控制器140分别与微处理器120和摄像装置130连接。
参见图2,中央控制器140包括无线通信单元141、图像识别单元142和控制单元143。控制单元143分别与无线通信单元141、图像识别单元142、微处理器120和摄像装置130连接。
本实施例与第一实施例的区别在于,如图4所示,在本实施例中,智能照明灯具100还包括与中央控制器140连接的音频播放装置150。中央控制器140还用于当识别出的目标物的状态满足预设条件时,控制音频播放装置150播放预定的音频信息。音频播放装置150包括扬声器。
以上所述仅为本发明的优选实施例而已,并不用于限制本发明,对于本领 域的技术人员来说,本发明可以有各种更改和变化。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在发明的权利要求范围之内。

Claims (9)

  1. 一种智能照明灯具,包括:
    照明光源组件;
    微处理器,与所述照明光源组件连接,用于控制所述光源组件提供照明;
    其特征在于,所述智能照明灯具还包括:
    摄像装置;
    中央控制器,分别与所述微处理器和所述摄像装置连接,用于接收控制设备发送的第一照明指令并转发所述微处理器,以及控制所述摄像装置采集周围环境的图像信息,对所述图像信息中的目标物进行识别,当识别出的所述目标物的状态满足预设条件时产生第二照明指令并发送到所述微处理器,以通过所述微处理器控制所述光源组件按照所述第二照明指令包含的照明模式提供照明。
  2. 根据权利要求1所述的智能照明灯具,其特征在于,所述中央控制器包括:
    无线通信单元,用于与控制设备和/或云端服务器进行无线通信;
    图像识别单元,与所述摄像装置连接,用于对所述摄像装置采集的周围环境的图像信息中的目标物进行识别;
    控制单元,分别与所述无线通信单元、所述图像识别单元、所述微处理器和所述摄像装置连接,用于将接收到的第一照明指令转发所述微处理器,以及控制所述摄像装置采集周围环境的图像信息,并控制所述图像识别单元对所述图像信息中的目标物进行识别,当识别出的所述目标物的状态满足预设条件时产生第二照明指令并发送到所述微处理器,以通过所述微处理器控 制所述照明光源组件按照所述第二照明指令包含的照明模式提供照明。
  3. 根据权利要求2所述的智能照明灯具,其特征在于,所述中央控制器还包括:
    与所述控制单元连接的提示单元;
    所述控制单元还用于当识别出的所述目标物的状态满足预设条件时,控制所述提示单元生成提示信息,并将所述提示信息通过所述无线通信单元发送到预定的目的终端设备。
  4. 根据权利要求1所述的智能照明灯具,其特征在于,所述照明模式包括逐渐点亮照明光源组件。
  5. 根据权利要求1所述的智能照明灯具,其特征在于,还包括:
    与所述中央控制器连接的音频播放装置;
    所述中央控制器还用于当识别出的所述目标物的状态满足预设条件时,控制音频播放装置播放预定的音频信息。
  6. 根据权利要求1所述的智能照明灯具,其特征在于,所述目标物包括人物;所述预设条件包括所述人物从睡觉状态醒来。
  7. 根据权利要求2所述的智能照明灯具,其特征在于,所述无线通信单元包括WIFI模块以及红外接收模块。
  8. 根据权利要求7所述的智能照明灯具,其特征在于,所述无线通信单元还包括zigbee模块,所述zigbee模块用于与其他智能照明灯具进行无线通信。
  9. 根据权利要求1所述的智能照明灯具,其特征在于,所述光源组件包括分别与所述微处理器连接的主灯以及氛围灯。
PCT/CN2017/073123 2017-02-08 2017-02-08 一种智能照明灯具 WO2018145271A1 (zh)

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